JP5395971B2 - Fittings and closing valves - Google Patents

Fittings and closing valves Download PDF

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JP5395971B2
JP5395971B2 JP2013057573A JP2013057573A JP5395971B2 JP 5395971 B2 JP5395971 B2 JP 5395971B2 JP 2013057573 A JP2013057573 A JP 2013057573A JP 2013057573 A JP2013057573 A JP 2013057573A JP 5395971 B2 JP5395971 B2 JP 5395971B2
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Prior art keywords
joint
pipe
main body
tightening
ferrule
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JP2013242041A (en
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憲男 水口
貴司 笹山
良弘 伊藤
真司 尾崎
千紗子 土井
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Chiyoda Kuchokiki Co Ltd
Nasco Fitting Co Ltd
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Chiyoda Kuchokiki Co Ltd
Nasco Fitting Co Ltd
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Priority to JP2013057573A priority Critical patent/JP5395971B2/en
Application filed by Chiyoda Kuchokiki Co Ltd, Nasco Fitting Co Ltd filed Critical Chiyoda Kuchokiki Co Ltd
Priority to ES13780867.1T priority patent/ES2646224T3/en
Priority to EP13781099.0A priority patent/EP2843285B1/en
Priority to PCT/JP2013/062416 priority patent/WO2013162006A1/en
Priority to PCT/JP2013/062415 priority patent/WO2013162005A1/en
Priority to EP13780867.1A priority patent/EP2843284B1/en
Priority to ES13781099.0T priority patent/ES2645624T3/en
Publication of JP2013242041A publication Critical patent/JP2013242041A/en
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Description

本発明は、管継手及び閉鎖バルブに関するものである。   The present invention relates to a pipe joint and a closing valve.

エア・コンディショナーのように、熱交換機器の間をパイプで接続して構成した循環路に冷媒を流動させるようにした熱交換装置においては、熱交換機器とパイプとを接続するための閉鎖バルブが設けられている。この閉鎖バルブは、冷媒の流路が形成されたハウジングと、流路を開閉するバルブ機能部と、パイプを接続するための管継手(継手機能部)とを備えている。   In a heat exchange device such as an air conditioner in which a refrigerant flows through a circulation path configured by connecting pipes between heat exchange devices, a closing valve for connecting the heat exchange device and the pipe is provided. Is provided. This closing valve includes a housing in which a flow path for refrigerant is formed, a valve function part for opening and closing the flow path, and a pipe joint (joint function part) for connecting a pipe.

現状の管継手は、流路の一方の端部を構成する筒状の継手本体部に、テーパ状のシール面を形成した形態であり、このテーパ状シール面に、パイプのフレア状に拡径変形させた接続端部を密着させてナットで締め付ける構造となっている。しかし、このテーパ状シール面とフレア状の接続端部とによる接続構造は、冷媒(フロンガス等)が漏出し易い。冷媒の漏出は、地球温暖化やオゾン層破壊などの地球環境破壊の原因となるため、熱交換装置における冷媒の漏出防止対策は重要課題である。   The current pipe joint is a form in which a tapered sealing surface is formed on the cylindrical joint body constituting one end of the flow path, and the diameter of the pipe is increased in the flare shape of the pipe. The deformed connection end is brought into close contact and tightened with a nut. However, the connection structure formed by the tapered seal surface and the flare-shaped connection end portion is likely to cause a refrigerant (such as chlorofluorocarbon) to leak out. Since leakage of refrigerant causes destruction of the global environment such as global warming and ozone layer destruction, measures to prevent refrigerant leakage in the heat exchange device are an important issue.

そこで本願出願人は、冷媒の漏出量を飛躍的に抑える管継手を備えた閉鎖バルブとして、特許文献1に記載されたものを提案した。この管継手は、流路の一方の端部を構成する筒状の継手本体部と、継手本体部にねじ込まれる筒状の締付部材と、締付部材と継手本体部に挿入したパイプを包囲する金属製のフェルールと、縮径手段とを備えている。   Therefore, the applicant of the present application has proposed a valve described in Patent Document 1 as a closing valve provided with a pipe joint that drastically suppresses the amount of refrigerant leakage. This pipe joint encloses a tubular joint body part constituting one end of the flow path, a tubular fastening member screwed into the joint body part, and a pipe inserted into the fastening member and the joint body part. A metal ferrule and a diameter reducing means.

縮径手段は、パイプ挿入方向に向かって縮径するテーパ面を有している。締付部材を螺進させると、フェルールが、テーパ面によって縮径方向へ塑性変形し、継手本体部の内周に気密状に密着するとともに、パイプの外周に対して遊動規制状態に食い込み且つ気密状に密着する形態で締め付けるようになっている。このように、フェルールを縮径させてパイプを接続する構造は、冷媒の漏出防止という観点からは非常に有効である。   The diameter reducing means has a tapered surface that reduces the diameter in the pipe insertion direction. When the tightening member is screwed, the ferrule is plastically deformed in the direction of diameter reduction by the taper surface, and tightly adheres to the inner periphery of the joint main body in an airtight manner. It is designed to be tightened in a form that closely contacts the shape. As described above, the structure in which the pipe is connected by reducing the diameter of the ferrule is very effective from the viewpoint of preventing leakage of the refrigerant.

特開2005−325872号公報JP 2005-325872 A

上記の管継手は、締付部材を継手本体部に軽くねじ込んだ状態で商取引される。そのため、管継手の運搬中や、作業者が管継手を取り扱う時に、締付部材が緩んで継手本体部から外れてしまうことが懸念される。
本発明は上記のような事情に基づいて完成されたものであって、締付部材が外れるのを防止することを目的とする。
The above-described pipe joint is traded in a state where the fastening member is lightly screwed into the joint main body. Therefore, there is a concern that the fastening member may loosen and come off from the joint body during transportation of the pipe joint or when an operator handles the pipe joint.
The present invention has been completed based on the above circumstances, and an object thereof is to prevent the fastening member from being detached.

本発明の管継手は、
熱交換機器の冷媒の流路と連通した形態であり、パイプが挿入されるようになっている筒状の継手本体部と、
前記継手本体部にねじ込みにより取り付けられ、前記継手本体部へのねじ込み量を増しながら締付け方向へ螺進する筒状の締付部材と、
締付け方向にねじ込まれた前記締付部材から軸方向の押圧力を受けることで、前記継手本体部の内周と前記パイプの外周との間を気密状にシールするフェルールと、
前記締付部材が前記フェルールに押圧力を付与しない状態で、前記締付部材が前記継手本体部から離脱するのを規制する離脱規制部材とを備えた管継手であって、
前記パイプを挿入させる挿入空間を有し、
前記離脱規制部材が、
前記挿入空間に収容され、前記継手本体部に対しねじ込みにより取り付けられる本体部と、
前記締付部材に対して接近して対向又は当接可能なストッパとを備えて構成されており、
前記本体部と前記継手本体部とのねじ込み部の螺旋ピッチと、前記締付部材と前記継手本体部とのねじ込み部の螺旋ピッチとが異なっているところに特徴を有する。
The pipe joint of the present invention is
A tubular joint main body portion that is in communication with the refrigerant flow path of the heat exchange device, and into which a pipe is inserted,
A cylindrical fastening member that is attached to the joint body by screwing, and that is screwed in the fastening direction while increasing the amount of screwing into the joint body;
A ferrule that seals between the inner periphery of the joint body portion and the outer periphery of the pipe in an airtight manner by receiving axial pressing force from the tightening member screwed in the tightening direction ;
A pipe joint provided with a detachment restricting member for restricting the detachment of the tightening member from the joint main body in a state where the tightening member does not apply a pressing force to the ferrule ,
An insertion space for inserting the pipe;
The separation regulating member is
A main body portion accommodated in the insertion space and attached to the joint main body portion by screwing;
It is configured to include a stopper that can approach or abut against the tightening member,
The helical pitch of the screwed part of the main body part and the joint main body part is different from the helical pitch of the screwed part of the fastening member and the joint main body part .

また、本発明の閉鎖バルブは、
熱交換機器に取り付けられるハウジングと、
前記ハウジング内に形成された冷媒の流路と、
前記流路を開閉する弁体と、
前記流路と連通するように前記ハウジングに形成され、パイプが挿入される筒状の継手本体部と、
前記継手本体部にねじ込みにより取り付けられ、前記継手本体部へのねじ込み量を増しながら締付け方向へ螺進する筒状の締付部材と、
締付け方向にねじ込まれた前記締付部材から軸方向の押圧力を受けることで、前記継手本体部の内周と前記パイプの外周との間を気密状にシールするフェルールと、
前記締付部材が前記フェルールに押圧力を付与しない状態で、前記締付部材が前記継手本体部から離脱するのを規制する離脱規制部材とを備えた閉鎖バルブであって、
前記パイプを挿入させる挿入空間を有し、
前記離脱規制部材が、
前記挿入空間に収容され、前記継手本体部に対しねじ込みにより取り付けられる本体部と、
前記締付部材に対して接近して対向又は当接可能なストッパとを備えて構成されており、
前記本体部と前記継手本体部とのねじ込み部の螺旋ピッチと、前記締付部材と前記継手本体部とのねじ込み部の螺旋ピッチとが異なっているところに特徴を有する。
The closing valve of the present invention is
A housing attached to the heat exchange device;
A refrigerant flow path formed in the housing;
A valve body for opening and closing the flow path;
A tubular joint body formed in the housing to communicate with the flow path and into which a pipe is inserted;
A cylindrical fastening member that is attached to the joint body by screwing, and that is screwed in the fastening direction while increasing the amount of screwing into the joint body;
A ferrule that seals between the inner periphery of the joint body portion and the outer periphery of the pipe in an airtight manner by receiving axial pressing force from the tightening member screwed in the tightening direction ;
A closing valve provided with a release regulating member that regulates the fastening member from being detached from the joint body in a state where the fastening member does not apply a pressing force to the ferrule ,
An insertion space for inserting the pipe;
The separation regulating member is
A main body portion accommodated in the insertion space and attached to the joint main body portion by screwing;
It is configured to include a stopper that can approach or abut against the tightening member,
The helical pitch of the screwed part of the main body part and the joint main body part is different from the helical pitch of the screwed part of the fastening member and the joint main body part .

本発明の管継手及び閉鎖バルブは、締付部材がフェルールを押圧しない状態において、締付部材に対して緩み方向の外力が作用しても、離脱規制部材を設けているので、締付部材が継手本体部から離脱することはない。
また、この構成によれば、本体部によって挿入空間への異物の侵入を阻止できるので、異物によるフェルールの傷付きを防止できる。さらに、締付部材が緩み方向に回転しながらストッパに当接しても、螺旋ピッチの違いにより、本体部が締付部材と連れ回りすることがない。したがって、締付部材の離脱を防止できる。
Since the pipe joint and the closing valve of the present invention are provided with the separation restricting member even when an external force in the loosening direction acts on the tightening member in a state where the tightening member does not press the ferrule, There is no detachment from the joint body.
Moreover, according to this structure, since the foreign substance can be prevented from entering the insertion space by the main body portion, the ferrule can be prevented from being damaged by the foreign substance. Furthermore, even if the tightening member rotates in the loosening direction and contacts the stopper, the main body portion does not rotate with the tightening member due to the difference in the helical pitch. Accordingly, it is possible to prevent the fastening member from being detached.

実施例1の管継手においてハウジングに離脱規制部材を取り付けた状態をあわらす断面図Sectional drawing which covers the state which attached the separation | extension control member to the housing in the pipe joint of Example 1. 緩んだ締付ナットが、離脱規制部材によって継手本体部からの離脱を規制されている状態をあらわす断面図Sectional view showing the state where the loosened nut is restricted from being disengaged from the joint body by the disengagement restricting member ハウジングから離脱規制部材を外した状態をあらわす断面図Sectional view showing the state where the separation regulating member is removed from the housing 継手本体部に挿入したパイプを保持した状態をあらわす断面図Sectional view showing the state of holding the pipe inserted into the joint body 管継手にパイプを正しく接続した状態をあらわす断面図Cross-sectional view showing the correct connection of the pipe to the fitting パイプが接続された状態において、締付ナットが緩んでも、固定部材が緩まない様子をあらわす断面図Sectional view showing how the fixing member does not loosen even when the tightening nut is loosened with the pipe connected 管継手を分解した状態をあらわす断面図Sectional view showing the disassembled state of the pipe joint ロック部材の断面図Cross section of locking member 図5の部分拡大断面図Partial enlarged sectional view of FIG. 実施例2の断面図Sectional drawing of Example 2 実施例3の断面図Sectional drawing of Example 3

本発明の管継手は
記離脱規制部材が、前記流路内の冷媒が前記挿入空間を通って外部へ漏出することを防止する封止部材として機能するようにしてもよい。
この構成によれば、封止部材を離脱規制部材とは別に設ける場合に比べると、部品点数を少なくすることができる。
Pipe joint of the present invention,
Before SL withdrawal regulating member, the refrigerant in the channel may be adapted to function as a sealing member to prevent leakage to the outside through the insertion space.
According to this configuration, the number of parts can be reduced as compared with the case where the sealing member is provided separately from the separation regulating member.

<実施例1>
本発明を具体化した実施例1を図1乃至図9を参照して説明する。
<管継手Jaの適用対象>
本実施例1の管継手Jaは、圧縮機及び凝縮器を備えた室外機B(請求項に記載の熱交換機器)と、膨張弁及び蒸発器を備えた図示しない室内機(請求項に記載の熱交換機器)とを、金属(銅又は銅合金)製のパイプPで接続した家庭用エア・コンディショナー(熱交換装置)に適用したものである。室外機Bと室内機とパイプPとによって循環経路が構成され、この循環経路の中を冷媒(フロンガス)が循環することで、熱交換が行われる。管継手Jaは、室外機Bの閉鎖バルブAにパイプPを接続するためのものである。管継手Jaは、閉鎖バルブAを構成する継手機能部として、閉鎖バルブAに一体的に設けられている。
<Example 1>
A first embodiment of the present invention will be described with reference to FIGS.
<Applicable object of pipe joint Ja>
The pipe joint Ja according to the first embodiment includes an outdoor unit B (a heat exchange device described in claims) provided with a compressor and a condenser, and an indoor unit (not shown) provided with an expansion valve and an evaporator. Is applied to a home air conditioner (heat exchange device) connected by a pipe P made of metal (copper or copper alloy). A circulation path is configured by the outdoor unit B, the indoor unit, and the pipe P, and refrigerant (fluorocarbon) circulates in the circulation path, whereby heat exchange is performed. The pipe joint Ja is for connecting the pipe P to the closing valve A of the outdoor unit B. The pipe joint Ja is provided integrally with the closing valve A as a joint function part constituting the closing valve A.

<閉鎖バルブAの全体構成>
閉鎖バルブAは、構造的には、バルブ本体10とロック部材11とを備えて構成されている。閉鎖バルブAは、機能的には、管継手Jaと、第1バルブ機能部13及び第2バルブ機能部14とを備えて構成されている。管継手Jaは、バルブ機能部13,14から切り離すことで、単機能の継手手段として機能し得るものである。
<Overall configuration of closing valve A>
The closing valve A is structurally provided with a valve main body 10 and a lock member 11. The closing valve A functionally includes a pipe joint Ja, a first valve function part 13 and a second valve function part 14. The pipe joint Ja can function as a single-function joint means by being separated from the valve function parts 13 and 14.

<バルブ本体10>
バルブ本体10は、黄銅製のハウジング15と、第1バルブ機能部13(開閉バルブ)と、第2バルブ機能部14(サービスバルブ)と、継手本体部16とを備えて構成される。ハウジング15内には、略L字形(略直角)に屈曲し、両端がハウジング15の外面に開口した流路17と、流路17に連通してハウジング15の外面に開口する分岐路18とが形成されている。閉鎖バルブAは、室外機Bの外面に露出した形態で固定される。流路17の一方の端部は、室外機Bの圧縮機(図示省略)の接続管19にロウ付け等の手段で気密状に固着される。
<Valve body 10>
The valve body 10 includes a brass housing 15, a first valve function part 13 (open / close valve), a second valve function part 14 (service valve), and a joint body part 16. Inside the housing 15, there are a flow path 17 that is bent in a substantially L shape (substantially right angle) and whose both ends are open to the outer surface of the housing 15, and a branch path 18 that communicates with the flow path 17 and opens to the outer surface of the housing 15. Is formed. The closing valve A is fixed in a form exposed on the outer surface of the outdoor unit B. One end of the flow path 17 is fixed in an airtight manner to a connecting pipe 19 of a compressor (not shown) of the outdoor unit B by means such as brazing.

第1バルブ機能部13の第1弁体20(請求項に記載の弁体)を手動操作すると、流路17における冷媒の流動を許容する開弁状態と、流路17における冷媒の流動を規制する閉弁状態との間で切り換えることができる。また、第2バルブ機能部14の第2弁体21(請求項に記載の弁体)を手動操作すると、分岐路18内、及びこれに連なる挿入空間23内とパイプP内を真空引きすることができる。   When the first valve body 20 (the valve body described in the claims) of the first valve function unit 13 is manually operated, the valve opening state that allows the refrigerant to flow in the flow path 17 and the flow of the refrigerant in the flow path 17 are regulated. It is possible to switch between closed valve states. Further, when the second valve body 21 (the valve body described in the claims) of the second valve function unit 14 is manually operated, the inside of the branch path 18 and the insertion space 23 connected thereto and the inside of the pipe P are evacuated. Can do.

<管継手Ja>
管継手Jaは、筒状の継手本体部16と、継手機能部12とを備えて構成されている。継手機能部12は、筒状の継手本体部16と、後部テーパ面31を含む縮径手段22と、筒状のロック部材11とを備えて構成される。管継手Jaの中空内は、流路17の端部に連通するともに継手本体部16の後端面(先端面)に開放された形態であって、パイプPを挿入するための挿入空間23となっている。継手本体部16は、ハウジング15に一体形成され、ハウジング15の外面から円筒状に突出している。
<Pipe joint Ja>
The pipe joint Ja is configured to include a tubular joint body 16 and a joint function part 12. The joint function part 12 includes a tubular joint body part 16, a diameter reducing means 22 including a rear tapered surface 31, and a tubular lock member 11. The inside of the hollow of the pipe joint Ja is in a form that communicates with the end of the flow path 17 and is open to the rear end face (tip face) of the joint main body 16, and becomes an insertion space 23 for inserting the pipe P. ing. The joint body 16 is integrally formed with the housing 15 and protrudes from the outer surface of the housing 15 in a cylindrical shape.

尚、この後の説明では、方向に関して、管継手Ja(挿入空間23)に対するパイプPの挿抜方向と平行な方向を前後方向とする。パイプPの挿抜方向は、締付部材32が回転しながら移動する方向と平行である。管継手Jaに対するパイプPの挿入方向前方(図1〜9における左方)を単に「前方」と記載し、管継手Jaに対するパイプPの挿入方向後方を単に「後方」と記載する。また、「前後方向」と、管継手Ja(継手本体部16)の「軸方向」とを同義で用いる。   In the following description, the direction parallel to the insertion / extraction direction of the pipe P with respect to the pipe joint Ja (insertion space 23) is defined as the front-rear direction. The insertion / extraction direction of the pipe P is parallel to the direction in which the fastening member 32 moves while rotating. The front of the pipe P in the insertion direction with respect to the pipe joint Ja (left side in FIGS. 1 to 9) is simply referred to as “front”, and the rear in the insertion direction of the pipe P with respect to the pipe joint Ja is simply referred to as “rear”. Further, the “front-rear direction” and the “axial direction” of the pipe joint Ja (joint body portion 16) are used synonymously.

継手本体部16の後端部外周には、第2雄ネジ部24が形成され、継手本体部16の外周における第2雄ネジ部24より前方の位置には、同心円形の拡径部25が形成されている。拡径部25の後端面は、軸方向と直交する平坦面からなる検知用受け部26となっている。継手本体部16の後端面は、パイプPの挿抜方向と直角をなす平坦面となっている。図9に示すように、平坦面の内周縁(即ち、後述する後部テーパ面31との境界となる周縁)は、エッジ状の角縁部27となっている。   A second male screw portion 24 is formed on the outer periphery of the rear end portion of the joint main body portion 16, and a concentric circular enlarged diameter portion 25 is provided at a position in front of the second male screw portion 24 on the outer periphery of the joint main body portion 16. Is formed. The rear end surface of the enlarged diameter portion 25 is a detection receiving portion 26 that is a flat surface orthogonal to the axial direction. The rear end surface of the joint main body portion 16 is a flat surface that is perpendicular to the insertion / extraction direction of the pipe P. As shown in FIG. 9, the inner peripheral edge of the flat surface (that is, the peripheral edge serving as a boundary with the rear tapered surface 31 described later) is an edge-shaped corner edge 27.

継手本体部16の内周面は、その前端部から後端部に向かって順に、第3雌ネジ部28と、前部テーパ面29と、定径面30と、後部テーパ面31とによって構成されている。前部テーパ面29は前方に向かって次第に縮径するようなテーパ状をなしている。前部テーパ面29の前端の内径はパイプPの外径より小さく、前部テーパ面29の後端の内径はパイプPの外径より僅かに大きい。定径面30は、前端から後端まで一定の内径寸法である。後部テーパ面31は前方に向かって次第に縮径しており、後部テーパ面31の前端の内径は、定径面30及び前部テーパ面29の最大内径と同じ寸法とされている。   The inner peripheral surface of the joint main body portion 16 is configured by a third female screw portion 28, a front tapered surface 29, a constant diameter surface 30, and a rear tapered surface 31 in order from the front end portion toward the rear end portion. Has been. The front taper surface 29 has a tapered shape that gradually decreases in diameter toward the front. The inner diameter of the front end of the front tapered surface 29 is smaller than the outer diameter of the pipe P, and the inner diameter of the rear end of the front tapered surface 29 is slightly larger than the outer diameter of the pipe P. The constant diameter surface 30 has a constant inner diameter from the front end to the rear end. The rear taper surface 31 is gradually reduced in diameter toward the front, and the inner diameter of the front end of the rear taper surface 31 is the same as the maximum inner diameter of the constant diameter surface 30 and the front taper surface 29.

<ロック部材11、締付部材32>
ロック部材11は、筒状をなす締付部材32と、同じく筒状をなすフェルール33と、弾性リング34とを組み付けて構成されている。締付部材32は、黄銅製の固定部材35と、黄銅製の締付ナット36との2部品から構成されている。固定部材35の内周における前端側領域には、第2雌ネジ部37が形成されている。固定部材35は、継手本体部16に対し後方から同軸状に外嵌して第2雌ネジ部37を第2雄ネジ部24にねじ込むことで、継手本体部16に組み付けられている。
<Lock member 11, tightening member 32>
The lock member 11 is configured by assembling a cylindrical fastening member 32, a cylindrical ferrule 33, and an elastic ring 34. The tightening member 32 is composed of two parts, a fixing member 35 made of brass and a tightening nut 36 made of brass. A second female screw portion 37 is formed in a front end side region in the inner periphery of the fixing member 35. The fixing member 35 is fitted to the joint body 16 by fitting the joint body 16 to the joint body 16 coaxially from the rear and screwing the second female thread 37 into the second male thread 24.

固定部材35の外周の後端部には、第1雄ネジ部38が形成されている。固定部材35の外周における第1雄ネジ部38よりも前方の位置には、軸方向に対して直角な平面状をなし、後方に臨む受圧部39が形成されている。固定部材35の外周のうち受圧部39よりも前方の領域は円周面領域40となっている。円周面領域40の軸方向と直角な断面形状は、真円形となっている。この円周面領域40は、固定部材35がフェルール33への押圧を解除する方向へ変位するのを規制するための緩み止め手段41を構成する。   A first male screw portion 38 is formed at the rear end portion of the outer periphery of the fixing member 35. A pressure receiving portion 39 is formed at a position in front of the first male screw portion 38 on the outer periphery of the fixing member 35 and has a planar shape perpendicular to the axial direction and faces the rear. A region in front of the pressure receiving portion 39 in the outer periphery of the fixing member 35 is a circumferential surface region 40. The cross-sectional shape perpendicular to the axial direction of the circumferential surface region 40 is a true circle. The circumferential surface area 40 constitutes a locking means 41 for restricting the fixing member 35 from being displaced in the direction in which the pressing to the ferrule 33 is released.

固定部材35の前端面(軸方向において継手本体部16の検知用受け部26と対向する面)は、軸方向と直交する平面状の突当部42となっている。この突当部42は、固定部材35を締付け方向へねじ込んで軸方向に移動させる過程で、検知用受け部26に対し接近・離間するとともに、検知用受け部26に面当たり(面接触)状態で当接するようになっている。   A front end surface of the fixing member 35 (a surface facing the detection receiving portion 26 of the joint main body 16 in the axial direction) is a planar abutting portion 42 orthogonal to the axial direction. The abutting portion 42 approaches and separates from the detection receiving portion 26 in the process of screwing the fixing member 35 in the tightening direction and moving the fixing member 35 in the axial direction, and also comes into contact with the detection receiving portion 26 (surface contact). It comes to contact with.

固定部材35の内周における第2雌ネジ部37よりも後方の領域には、全周に亘って内側へ同心状に突出する係止部43が形成されている。固定部材35の内周における第2雌ネジ部37と係止部43との間の位置には、前方に臨む平面状の押圧面44が形成されている。押圧面44は、パイプPの挿抜方向と直角であって、固定部材35を継手本体部16に組み付けたときにフェルール33のリング状本体部51を挟んで受圧面55と対向するように位置する。固定部材35の内周の後端部には、前方に向かって縮径するようなテーパ状をなし、固定部材35の後端面に開放された形態の切欠部45が形成されている。   A locking portion 43 that projects concentrically inward over the entire circumference is formed in a region behind the second female screw portion 37 on the inner circumference of the fixing member 35. A flat pressing surface 44 facing forward is formed at a position between the second female screw portion 37 and the locking portion 43 on the inner periphery of the fixing member 35. The pressing surface 44 is perpendicular to the insertion / extraction direction of the pipe P, and is positioned so as to face the pressure receiving surface 55 with the ring-shaped main body 51 of the ferrule 33 interposed therebetween when the fixing member 35 is assembled to the joint main body 16. . At the rear end portion of the inner periphery of the fixing member 35, a notched portion 45 is formed so as to be tapered toward the front and open to the rear end surface of the fixing member 35.

締付ナット36の内周の前端部には、第1雌ネジ部46が形成されている。締付ナット36の内周の後端部には、第1雌ネジ部46よりも内径の小さい小径部47が同心状に形成されている。小径部47の内径は、パイプPの外径と同じかそれよりも僅かに大きい寸法である。締付ナット36の外周は、正六角形をなす嵌合部48となっている。この嵌合部48には、汎用のスパナ等の締付け工具(図示省略)を嵌合することができる。締付ナット36の前端面は、軸方向に対して直角な平面状をなし、前方に臨む押圧部49となっている。   A first female thread portion 46 is formed at the front end portion of the inner periphery of the tightening nut 36. A small-diameter portion 47 having an inner diameter smaller than that of the first female screw portion 46 is formed concentrically at the rear end portion of the inner periphery of the tightening nut 36. The inner diameter of the small diameter portion 47 is the same as or slightly larger than the outer diameter of the pipe P. The outer periphery of the tightening nut 36 is a fitting portion 48 having a regular hexagonal shape. A tightening tool (not shown) such as a general-purpose spanner can be fitted into the fitting portion 48. The front end surface of the tightening nut 36 has a flat shape perpendicular to the axial direction and serves as a pressing portion 49 facing forward.

締付ナット36は、その第1雌ネジ部46を第1雄ネジ部38にねじ込むことで、固定部材35に対して後方から組み付けられている。締付ナット36と固定部材35を組み付けた状態では、切欠部45と小径部47とにより、締付部材32の内周に臨む保持溝50が構成される。この保持溝50には弾性リング34が取り付けられる。弾性リング34は、ゴム製であり、全周に亘って繋がった円環状をなしている。弾性リング34の弾性変形していない状態における内径寸法は、パイプPの外径寸法とほぼ同じ寸法である。つまり、弾性リング34の内径は、パイプPの外径と同じ寸法、パイプPの外径より大きい寸法、パイプPの外径より小さい寸法のいずれでもよい。   The tightening nut 36 is assembled to the fixing member 35 from the rear by screwing the first female screw portion 46 into the first male screw portion 38. In the state where the tightening nut 36 and the fixing member 35 are assembled, the notch portion 45 and the small diameter portion 47 constitute a holding groove 50 that faces the inner periphery of the tightening member 32. An elastic ring 34 is attached to the holding groove 50. The elastic ring 34 is made of rubber and has an annular shape connected over the entire circumference. The inner diameter of the elastic ring 34 in a state where it is not elastically deformed is substantially the same as the outer diameter of the pipe P. That is, the inner diameter of the elastic ring 34 may be any of the same dimension as the outer diameter of the pipe P, a dimension larger than the outer diameter of the pipe P, and a dimension smaller than the outer diameter of the pipe P.

パイプPを管継手Jaに接続する前の状態では、図1〜3に示すように、締付ナット36は初期位置にある。締付ナット36が初期位置にあるとき、弾性リング34は、切欠部45や小径部47に接触していても、弾性変形していないか、弾性変形してもその変形量は小さい。また、締付ナット36が初期位置にあるときは、締付ナット36の押圧部49と固定部材35の受圧部39との間に軸方向の間隔が空き、固定部材35の後端面と小径部47の前面との間にも間隔が空いている。   In a state before the pipe P is connected to the pipe joint Ja, the tightening nut 36 is in the initial position as shown in FIGS. When the tightening nut 36 is in the initial position, the elastic ring 34 is not elastically deformed even if it is in contact with the notch 45 or the small diameter portion 47, or the amount of deformation is small even if elastically deformed. When the tightening nut 36 is in the initial position, there is an axial interval between the pressing portion 49 of the tightening nut 36 and the pressure receiving portion 39 of the fixing member 35, and the rear end surface of the fixing member 35 and the small diameter portion There is also a space between the front surface of 47.

<フェルール33>
フェルール33は、黄銅製であり、固定部材35の中空内において継手本体部16及び締付部材32と同軸状に配される。以下、パイプPが管継手Jaに接続されていない状態(フェルール33がパイプPと接触していない状態)におけるフェルール33の形態を説明する。フェルール33は、管継手Ja(挿入空間23)に挿入されたパイプPを囲むような円筒状をなしている。フェルール33の最小内径は、パイプPの外径より大きく、定径面30とほぼ同じ内径である。
<Ferrule 33>
The ferrule 33 is made of brass, and is arranged coaxially with the joint body 16 and the fastening member 32 in the hollow of the fixing member 35. Hereinafter, the form of the ferrule 33 in a state where the pipe P is not connected to the pipe joint Ja (a state where the ferrule 33 is not in contact with the pipe P) will be described. The ferrule 33 has a cylindrical shape surrounding the pipe P inserted into the pipe joint Ja (insertion space 23). The minimum inner diameter of the ferrule 33 is larger than the outer diameter of the pipe P and is substantially the same inner diameter as the constant diameter surface 30.

図9に示すように、フェルール33は、肉厚のリング状本体部51と、リング状本体部51より肉薄であってリング状本体部51から前方へ延出する筒状締付部52と、リング状本体部51より肉薄であってリング状本体部51から後方へ延出する保持部53とからなる。リング状本体部51の外周部は、筒状締付部52及び保持部53の外周から段差状に拡径している。リング状本体部51の前面は、軸線方向と直角に近い角度であるが前方に向かって縮径した形態のシール面54となっている。リング状本体部51の後面は、軸方向と直角をなす受圧面55となっている。   As shown in FIG. 9, the ferrule 33 includes a thick ring-shaped main body 51, a cylindrical fastening portion 52 that is thinner than the ring-shaped main body 51 and extends forward from the ring-shaped main body 51, The holding portion 53 is thinner than the ring-shaped main body 51 and extends rearward from the ring-shaped main body 51. The outer peripheral part of the ring-shaped main body part 51 is expanded in steps from the outer periphery of the cylindrical fastening part 52 and the holding part 53. The front surface of the ring-shaped main body 51 is a seal surface 54 that has an angle close to a right angle to the axial direction but is reduced in diameter toward the front. The rear surface of the ring-shaped main body 51 is a pressure receiving surface 55 that is perpendicular to the axial direction.

筒状締付部52の外周面は、前方に向かって縮径するように傾斜している。筒状締付部52の内周における前端縁は、第1食い込み部56となっている。筒状締付部52の内周のうち第1食い込み部56よりも後方の位置には、斜め前内向きに尖ったエッジ状の第2食い込み部57が形成されている。保持部53の後端部は、径方向外向きに斜め後方へ拡径するように片持ち状に延出した形態の外向き突部58となっている。保持部53の外面のうち外向き突部58の前方の領域は、保持部53の外径が最も小さい凹部59となっている。   The outer peripheral surface of the cylindrical fastening part 52 is inclined so as to reduce the diameter toward the front. The front end edge of the inner periphery of the cylindrical tightening portion 52 is a first biting portion 56. An edge-shaped second biting portion 57 that is pointed obliquely forward and inward is formed at a position behind the first biting portion 56 in the inner periphery of the cylindrical tightening portion 52. The rear end portion of the holding portion 53 is an outward projecting portion 58 that extends in a cantilever shape so as to expand radially outward in a diagonal direction. A region in front of the outward projecting portion 58 in the outer surface of the holding portion 53 is a concave portion 59 having the smallest outer diameter of the holding portion 53.

フェルール33は、外向き突部58を径方向外向きに曲げ加工する前の状態で前方から固定部材35内に収容される。この状態で、治具(図示省略)を使って保持部53の後端部を曲げ加工すると、外向き突部58と凹部59が形成され、凹部59と係止部43とが係止状態となり、フェルール33と固定部材35は前後両方向への離脱を規制された状態に組み付けられる。尚、外向き突部58を形成するときには、固定部材35から締付ナット36を外しておく。   The ferrule 33 is accommodated in the fixing member 35 from the front before the outward projection 58 is bent outward in the radial direction. In this state, when the rear end portion of the holding portion 53 is bent using a jig (not shown), the outward projecting portion 58 and the recessed portion 59 are formed, and the recessed portion 59 and the locking portion 43 are locked. The ferrule 33 and the fixing member 35 are assembled in a state in which separation in both the front and rear directions is restricted. When forming the outward projection 58, the tightening nut 36 is removed from the fixing member 35.

ロック部材11は、第2雌ネジ部37を第2雄ネジ部24にねじ込むことで、後方から継手本体部16に組み付けられている。この第2雄ネジ部24と第2雌ネジ部37の螺旋ピッチは、第1雄ネジ部38と第1雌ネジ部46の螺旋ピッチよりも大きい。管継手JaにパイプPを接続する前の状態では、図3に示すように、フェルール33が変形せず、検知用受け部26と突当部42との間に隙間が空き、受圧部39と押圧部49との間に隙間が空き、押圧面44と受圧面55との間に隙間が空いている。   The lock member 11 is assembled to the joint body 16 from the rear by screwing the second female screw portion 37 into the second male screw portion 24. The helical pitch of the second male screw part 24 and the second female screw part 37 is larger than the helical pitch of the first male screw part 38 and the first female screw part 46. In a state before the pipe P is connected to the pipe joint Ja, as shown in FIG. 3, the ferrule 33 is not deformed, and there is a gap between the detection receiving portion 26 and the abutting portion 42, and the pressure receiving portion 39 and There is a gap between the pressing portion 49 and a gap between the pressing surface 44 and the pressure receiving surface 55.

<離脱規制部材60>
図1,2に示すように、閉鎖バルブAには、管継手JaにパイプPを接続する前の状態で、締付部材32が緩んで継手本体部16から離脱するのを防止するための手段として、離脱規制部材60が設けられている。この離脱規制部材60は、管継手Ja(挿入空間23)における冷媒の流動を規制するための封止部材としての機能も兼ね備えている。離脱規制部材60は、管継手Jaへの取付けと管継手Jaからの取外しが可能である。
<Separation control member 60>
As shown in FIGS. 1 and 2, the closing valve A has a means for preventing the fastening member 32 from being loosened and detached from the joint body 16 before the pipe P is connected to the pipe joint Ja. As described above, a separation regulating member 60 is provided. The separation regulating member 60 also has a function as a sealing member for regulating the flow of the refrigerant in the pipe joint Ja (insertion space 23). The detachment restricting member 60 can be attached to the pipe joint Ja and removed from the pipe joint Ja.

離脱規制部材60は、黄銅製であり、筒状本体部61(本発明の構成要件である本体部)と、ストッパ62と、第3雄ネジ部63とを一体に形成したものである。筒状本体部61の内部には、その後端面に開放された正六角形の嵌合孔64が形成されている。筒状本体部61の外径寸法は、変形していない状態のフェルール33の最小内径よりも小さい。ストッパ62は、筒状本体部61の後端部外周に位置し、筒状本体部61と同心の円形をなすフランジ状に形成されている。ストッパ62の外径寸法は、筒状本体部61の外径、及び締付ナット36の小径部47の内径より大きい寸法である。   The detachment restricting member 60 is made of brass, and is formed by integrally forming a cylindrical main body portion 61 (a main body portion that is a constituent of the present invention), a stopper 62, and a third male screw portion 63. A regular hexagonal fitting hole 64 opened at the rear end face is formed inside the cylindrical main body 61. The outer diameter dimension of the cylindrical main body 61 is smaller than the minimum inner diameter of the ferrule 33 that is not deformed. The stopper 62 is located on the outer periphery of the rear end portion of the cylindrical main body 61 and is formed in a flange shape that is concentric with the cylindrical main body 61. The outer diameter of the stopper 62 is larger than the outer diameter of the cylindrical main body 61 and the inner diameter of the small diameter portion 47 of the tightening nut 36.

第3雄ネジ部63は、筒状本体部61の前端部外周に形成されている。第3雄ネジ部63と第3雌ネジ部28の螺旋ピッチは、第1雄ネジ部38と第1雌ネジ部46の螺旋ピッチよりも小さい。筒状本体部61の外周のうち第3雄ネジ部63の後方に隣接する領域は、全周に亘って連続した形態で段差状に形成された封止用当接部65となっている。この封止用当接部65の外径は、前部テーパ面29の前端の最小内径寸法及び第3雄ネジ部63の外径寸法よりも大きい。   The third male screw portion 63 is formed on the outer periphery of the front end portion of the cylindrical main body portion 61. The helical pitch of the third male screw part 63 and the third female screw part 28 is smaller than the helical pitch of the first male screw part 38 and the first female screw part 46. A region adjacent to the rear of the third male screw portion 63 in the outer periphery of the cylindrical main body portion 61 is a sealing contact portion 65 formed in a step shape in a continuous form over the entire periphery. The outer diameter of the sealing contact portion 65 is larger than the minimum inner diameter dimension of the front end of the front tapered surface 29 and the outer diameter dimension of the third male screw portion 63.

<管継手Jaの組付け>
閉鎖バルブAにおける管継手Jaの組付けは、次の手順で行う。継手本体部16に対し、第2雌ネジ部37を第2雄ネジ部24にねじ込むことによって、ロック部材11を後方から組み付ける。このとき、固定部材35の外周を指で摘み、工具を使わずに手の力だけでねじ込む。また、締付ナット36は初期位置にある。固定部材35の回転が停止したところで、ロック部材11の組付けが完了し、ロック部材11は仮組み状態となる。
<Assembly of pipe fitting Ja>
Assembly of the pipe joint Ja in the closing valve A is performed in the following procedure. The lock member 11 is assembled from the rear side by screwing the second female screw portion 37 into the second male screw portion 24 with respect to the joint main body portion 16. At this time, the outer periphery of the fixing member 35 is picked with a finger, and screwed with only the power of the hand without using a tool. The tightening nut 36 is in the initial position. When the rotation of the fixing member 35 stops, the assembly of the lock member 11 is completed, and the lock member 11 is in a temporarily assembled state.

図3に示すように、仮組み状態では、フェルール33(筒状締付部52)の前端が継手本体部16の後部テーパ面31に軽く当接するが、フェルール33は殆ど変形は生じていない。また、ロック部材11の前端の突当部42は継手本体部16の検知用受け部26に対して後方に離間して対向するように位置する。   As shown in FIG. 3, in the temporarily assembled state, the front end of the ferrule 33 (cylindrical tightening portion 52) slightly contacts the rear tapered surface 31 of the joint body portion 16, but the ferrule 33 is hardly deformed. Further, the abutting portion 42 at the front end of the lock member 11 is positioned so as to face the detection receiving portion 26 of the joint main body portion 16 while being spaced apart rearward.

この後、図1に示すように、管継手Ja(挿入空間23)内に後方から離脱規制部材60を組み付ける。組み付けるときには、筒状本体部61を挿入空間23に挿入し、ストッパ62を摘んで、工具を使わずに手の力だけで第3雄ネジ部63を第3雌ネジ部28にねじ込む。   Thereafter, as shown in FIG. 1, the separation regulating member 60 is assembled from the rear in the pipe joint Ja (insertion space 23). When assembling, the cylindrical main body portion 61 is inserted into the insertion space 23, the stopper 62 is picked, and the third male screw portion 63 is screwed into the third female screw portion 28 by hand force without using a tool.

そして、封止用当接部65が前部テーパ面29に当接した後は、嵌合孔64に六角レンチ(図示省略)を嵌めて、更に離脱規制部材60をねじ込んでいく。この工具を用いた更なるねじ込みにより、封止用当接部65が前部テーパ面29に対し全周に亘って気密状に食い込むように密着する。これにより、継手本体部16の内周と離脱規制部材60の外周との隙間が気密状にシールされ、流路17内の冷媒が挿入空間23を通って外部へ漏出することが規制される。以上で、管継手Jaの組付けが完了する。   And after the contact part 65 for sealing contact | abuts to the front part taper surface 29, a hexagon wrench (illustration omitted) is fitted in the fitting hole 64, and the detachment | restoration control member 60 is further screwed in. By further screwing using this tool, the sealing contact portion 65 is in close contact with the front tapered surface 29 so as to bite in an airtight manner over the entire circumference. As a result, the gap between the inner periphery of the joint body 16 and the outer periphery of the separation restricting member 60 is sealed in an airtight manner, and the refrigerant in the flow path 17 is restricted from leaking outside through the insertion space 23. This completes the assembly of the pipe joint Ja.

このようにして管継手Jaの組付けが完了した閉鎖バルブAは、熱交換装置の室外機Bに取り付けられる。また、室外機B内には冷媒が充填されるが、流路17が第1弁体20で閉弁されているので、室外機B内の冷媒が管継手Ja側へ漏出する虞はない。万一、冷媒が第1弁体20を通過して管継手Ja側へ流出しても、管継手Ja内は、離脱規制部材60のシール作用によって気密状に封止されているので、冷媒が管継手Jaを通過して大気中へ漏出することはない。   The closing valve A in which the assembly of the pipe joint Ja is completed in this way is attached to the outdoor unit B of the heat exchange device. Moreover, although the refrigerant | coolant is filled in the outdoor unit B, since the flow path 17 is closed by the 1st valve body 20, there is no possibility that the refrigerant | coolant in the outdoor unit B may leak to the pipe joint Ja side. Even if the refrigerant passes through the first valve body 20 and flows out to the pipe joint Ja side, the inside of the pipe joint Ja is sealed in an airtight manner by the sealing action of the separation regulating member 60. It does not leak into the atmosphere through the pipe joint Ja.

離脱規制部材60が管継手Jaに組み付けられている状態では、作業者が誤ってロック部材11を緩み方向(継手本体部16から外れる方向)へ回転させたとしても、図2に示すように、固定部材35が継手本体部16から外れる前に、締付ナット36の後端(小径部47の後面)が離脱規制部材60のストッパ62に当接する。これにより、締付ナット36のそれ以上の後方移動が規制されるので、締付ナット36(締付部材32)が継手本体部16から離脱することはない。   In the state where the detachment regulating member 60 is assembled to the pipe joint Ja, even if the operator accidentally rotates the lock member 11 in the loosening direction (direction away from the joint body 16), as shown in FIG. Before the fixing member 35 is detached from the joint main body portion 16, the rear end (the rear surface of the small diameter portion 47) of the tightening nut 36 abuts against the stopper 62 of the separation regulating member 60. As a result, further rearward movement of the tightening nut 36 is restricted, so that the tightening nut 36 (the tightening member 32) will not be detached from the joint body 16.

また、ロック部材11がストッパ62に当接して離脱規制されている状態において、締付ナット36が強い力で緩み方向へ回されたときに、締付ナット36とストッパ62との間の摩擦によって離脱規制部材60が緩み方向へ連れ周りすることが懸念される。しかし、第1雄ネジ部38と第1雌ネジ部46の螺旋ピッチは、第3雄ネジ部63と第3雌ネジ部28の螺旋ピッチよりも大きいので、離脱規制部材60は、連れ回りすることなく回転不能にロックされる。これにより、ロック部材11の離脱と離脱規制部材60の緩みが確実に防止される。   Further, in a state where the lock member 11 is in contact with the stopper 62 and the separation is restricted, when the tightening nut 36 is rotated in the loosening direction with a strong force, friction between the tightening nut 36 and the stopper 62 is caused. There is a concern that the detachment regulating member 60 may move in the loosening direction. However, since the helical pitch of the first male screw part 38 and the first female screw part 46 is larger than the helical pitch of the third male screw part 63 and the third female screw part 28, the separation regulating member 60 is rotated. Without being locked, it is locked. Thereby, the detachment of the lock member 11 and the loosening of the detachment regulating member 60 are surely prevented.

<パイプPの接続>
管継手Ja(継手機能部12)にパイプPを接続する際には、予め、図3に示すように、離脱規制部材60を継手本体部16から外しておく。そして、作業者は、一方の手でハウジング15を掴み、他方の手でパイプPを掴んで挿入空間23内に挿入し、パイプPの前端を前部テーパ面29に当接させて、パイプPを前止まり状態とする。この後、一旦ハウジング15から手を離し、その手で締付ナット36を締付け方向(前方)へねじ込んでいく。この時、工具を使用する必要はない。図4に示すように、ねじ込みは、押圧部49が受圧部39に当接するまで続ける。
<Connection of pipe P>
When connecting the pipe P to the pipe joint Ja (joint function part 12), the separation regulating member 60 is removed from the joint body part 16 in advance as shown in FIG. Then, the operator grasps the housing 15 with one hand, grasps the pipe P with the other hand, inserts it into the insertion space 23, brings the front end of the pipe P into contact with the front tapered surface 29, and the pipe P Is set to the front stop state. Thereafter, the hand is once released from the housing 15, and the tightening nut 36 is screwed in the tightening direction (forward) with the hand. At this time, it is not necessary to use a tool. As shown in FIG. 4, the screwing is continued until the pressing portion 49 contacts the pressure receiving portion 39.

締付ナット36をねじ込むと、保持溝50の前後寸法が小さくなり、弾性リング34が、切欠部45と小径部47との間で前後に潰され、弾性リング34の内径が小さくなっていく。これにより、弾性リング34が、パイプPの外周に対し全周に亘って弾性的に当接する。この弾性的な当接に起因する摩擦抵抗により、パイプPが、ロック部材11に対して前後方向への相対移動を規制され、継手本体部16に対して離脱を規制された状態で保持される。この作業に関し、作業マニュアルでは、押圧部49が受圧部39に当接するまで締付ナット36をねじ込むことを定めておく。したがって、非熟練者であっても、パイプPを保持する作業を確実に実行することができる。   When the tightening nut 36 is screwed in, the longitudinal dimension of the holding groove 50 is reduced, the elastic ring 34 is crushed back and forth between the notch portion 45 and the small diameter portion 47, and the inner diameter of the elastic ring 34 is reduced. Thereby, the elastic ring 34 contacts elastically with respect to the outer periphery of the pipe P over the whole periphery. By the frictional resistance resulting from this elastic contact, the pipe P is held in a state in which relative movement in the front-rear direction with respect to the lock member 11 is restricted and detachment with respect to the joint body 16 is restricted. . With respect to this work, the work manual prescribes that the tightening nut 36 is screwed until the pressing portion 49 contacts the pressure receiving portion 39. Therefore, even an unskilled person can reliably execute the operation of holding the pipe P.

パイプPを保持した後は、締付ナット36の嵌合部48とハウジング15の外面にスパナなどの治具(図示せず)を嵌め、締付ナット36を前方(締付け方向)へ移動するように回転させていく。このとき、押圧部49と受圧部39が当接しているので、固定部材35は、直接回転力を付与されなくても、締付ナット36と一体となって回転する。このようにして、締付部材32が締付け方向にねじ込まれ、このねじ込み作業は、図5に示すように、突当部42が検知用受け部26に突き当たって、締付部材32のねじ込みが規制されるまで続けられる。   After holding the pipe P, a jig (not shown) such as a spanner is fitted to the fitting portion 48 of the tightening nut 36 and the outer surface of the housing 15, and the tightening nut 36 is moved forward (tightening direction). Rotate to. At this time, since the pressing portion 49 and the pressure receiving portion 39 are in contact with each other, the fixing member 35 rotates integrally with the tightening nut 36 even if a direct rotational force is not applied. In this way, the tightening member 32 is screwed in the tightening direction. As shown in FIG. 5, the screwing operation is performed when the abutting portion 42 abuts against the detection receiving portion 26 and the screwing of the tightening member 32 is restricted. Continue until it is done.

締付部材32のねじ込みが進む過程で、固定部材35の押圧面44がフェルール33の受圧面55に当接し、それ以降は、押圧面44が受圧面55を軸方向に押圧することにより、フェルール33が、継手本体部16に対して相対的に前方へ押し動かされる。これに伴い、筒状締付部52が、後部テーパ面31上を摺接しながらその傾斜によって縮径するように塑性変形していく。   In the process of screwing in the tightening member 32, the pressing surface 44 of the fixing member 35 contacts the pressure receiving surface 55 of the ferrule 33, and thereafter, the pressing surface 44 presses the pressure receiving surface 55 in the axial direction. 33 is pushed forward relative to the joint body 16. Along with this, the cylindrical fastening portion 52 is plastically deformed so as to be reduced in diameter by the inclination while sliding on the rear tapered surface 31.

図9に示すように、筒状締付部52が縮径変形すると、第1食い込み部56と第2食い込み部57が、パイプPの外周に対し、全周に亘って楔のように食い込んで軸方向への相対変位を規制する。この食い込み作用により、フェルール33の内周とパイプPの外周との間が、軸方向(パイプPの長さ方向)に間隔を空けた前後2箇所おいて気密状にシールされるとともに、パイプPの後方への抜けを規制された状態にロックされる。   As shown in FIG. 9, when the diameter of the cylindrical fastening portion 52 is reduced, the first biting portion 56 and the second biting portion 57 bite into the outer circumference of the pipe P like a wedge over the entire circumference. Regulates relative displacement in the axial direction. By this biting action, the inner periphery of the ferrule 33 and the outer periphery of the pipe P are sealed in an airtight manner at two places before and after being spaced apart in the axial direction (the length direction of the pipe P). Is locked in a restricted state.

また、筒状締付部52の外周面における前端部が、塑性変形した状態で後部テーパ面31に対し全周に亘って気密状に密着するとともに、継手本体部16の角縁部27が、フェルール33のシール面54に対し全周に亘って塑性変形(潰れ変形)した状態で気密状に密着する。この密着作用によって、フェルール33の外周と継手本体部16の内周との間が、軸方向に間隔を空けた前後2箇所おいて気密状にシールされる。   In addition, the front end portion of the outer peripheral surface of the cylindrical tightening portion 52 is in a state of being plastically deformed and tightly adheres to the rear tapered surface 31 over the entire circumference, and the corner edge portion 27 of the joint main body portion 16 is It adheres in an airtight manner to the sealing surface 54 of the ferrule 33 in a state of plastic deformation (collapse deformation) over the entire circumference. By this close contact action, the space between the outer periphery of the ferrule 33 and the inner periphery of the joint main body portion 16 is hermetically sealed at two positions in the front and rear with a space in the axial direction.

上記の気密状の食い込み状態と気密状の密着状態は、縮径手段22が、管継手JaとパイプPとを正しく接続した正規シール状態(正規の締付け状態)を意味する。正規シール状態では、食い込み部分及び密着部分において、互いに当接し合う部位が塑性変形するので、パイプPと管継手Jaとの間における冷媒の漏れが確実に阻止される。   The airtight bite state and the airtight contact state described above mean a normal seal state (normal tightening state) in which the diameter reducing means 22 correctly connects the pipe joint Ja and the pipe P. In the regular sealing state, the portions that come into contact with each other in the biting portion and the close contact portion are plastically deformed, so that leakage of the refrigerant between the pipe P and the pipe joint Ja is reliably prevented.

また、締付部材32が締付け方向にねじ込まれる過程では、突当部42が検知用受け部26に到達する直前に、縮径手段22が正規シール状態となる。縮径手段22が、不完全シール状態(筒状締付部52がパイプPに気密状に食い込まない状態)から正規シール状態へ移行した時点では、作業者は、外観上、正規の締め付け状態になっていることを視認することはできない。しかし、作業マニュアルでは、突当部42が検知用受け部26に突き当たるまで、目視確認しながら締付部材32(締付ナット36)の締付けを続けるように定められている。したがって、非熟練者であっても、作業マニュアルに従って締付部材32の締付け作業を行えば、パイプPを正規シール状態となるように接続することができる。   Further, in the process in which the tightening member 32 is screwed in the tightening direction, the diameter reducing means 22 is in the normal sealing state immediately before the abutting portion 42 reaches the detection receiving portion 26. When the diameter-reducing means 22 shifts from an incompletely sealed state (a state in which the cylindrical tightening portion 52 does not bite into the pipe P in an airtight manner) to a normal sealing state, the operator is in a normal tightening state in appearance. You cannot see that it is. However, the operation manual stipulates that tightening of the tightening member 32 (tightening nut 36) is continued while visually checking until the abutting portion 42 abuts against the detection receiving portion 26. Therefore, even a non-skilled person can connect the pipe P so as to be in a normal sealing state by performing the tightening operation of the tightening member 32 according to the operation manual.

パイプPを管継手Jaに接続した後、誤って、締付ナット36に緩み方向への回転力を付与した場合、図6に示すように締付ナット36は緩み方向へ回転するが、固定部材35に関しては、金属同士の食い込みによる緩み止め手段41が設けられているので緩み方向へ回転することはない。また、汎用の工具を固定部材35に嵌めても、固定部材35の外周面は円形断面の円周面領域40であることに加え、金属同士の食い込みによる緩み止め手段41により、固定部材35に回転力を付与することはできない。   After the pipe P is connected to the pipe joint Ja, if the rotational force in the loosening direction is applied to the fastening nut 36 by mistake, the fastening nut 36 rotates in the loosening direction as shown in FIG. Regarding 35, since the locking means 41 by the biting of metal is provided, it does not rotate in the loosening direction. Further, even when a general-purpose tool is fitted to the fixing member 35, the outer peripheral surface of the fixing member 35 is the circular surface area 40, and the fixing member 35 is fixed by the loosening prevention means 41 by biting between metals. A rotational force cannot be applied.

図9に示すように、緩み止め手段41として機能する金属同士の食い込み構造は、継手本体部16の角縁部27とフェルール33のシール面54との間の食い込み構造、フェルール33の受圧面55と固定部材35の押圧面44との間の食い込み構造、図5に示す継手本体部16の前部テーパ面29とパイプPの前端部との間の食い込み構造、及び図9に示すパイプPの外周とフェルール33の第1食い込み部56及び第2食い込み部57との間の食い込み構造である。これらの食い込み構造により、固定部材35の緩みが確実に防止される。   As shown in FIG. 9, the metal biting structure that functions as the locking means 41 is a biting structure between the corner edge 27 of the joint body 16 and the seal surface 54 of the ferrule 33, and the pressure receiving surface 55 of the ferrule 33. 9 and the pressing surface 44 of the fixing member 35, the biting structure between the front tapered surface 29 of the joint body 16 and the front end of the pipe P shown in FIG. 5, and the pipe P shown in FIG. This is a biting structure between the outer periphery and the first biting part 56 and the second biting part 57 of the ferrule 33. With these biting structures, loosening of the fixing member 35 is reliably prevented.

本実施例1の管継手Ja(閉鎖バルブA)は、フェルール33に当接して押圧力を付与する筒状の固定部材35と、外周に非円形の嵌合部48が形成され、締付け方向のねじ込み力を付与されることで固定部材35にフェルール33側への押圧力を付与する締付ナット36と、固定部材35がフェルール33への押圧を解除する方向へ変位するのを規制する緩み止め手段41とを備えている。この管継手Jaによれば、パイプPを接続した状態で締付ナット36が緩み方向に回転しても、固定部材35は、緩み止め手段41によってフェルール33への押圧を解除する方向へ変位することが規制されている。したがって、フェルール33によるシール状態が維持され、シール性能の信頼性に優れている。   In the pipe joint Ja (closing valve A) of the first embodiment, a cylindrical fixing member 35 that abuts on the ferrule 33 and applies a pressing force, and a non-circular fitting portion 48 are formed on the outer periphery. A tightening nut 36 that applies a pressing force to the fixing member 35 toward the ferrule 33 by applying a screwing force, and a loosening prevention that restricts the fixing member 35 from being displaced in a direction in which the pressing to the ferrule 33 is released. Means 41 are provided. According to this pipe joint Ja, even if the tightening nut 36 rotates in the loosening direction with the pipe P connected, the fixing member 35 is displaced in the direction of releasing the pressure on the ferrule 33 by the loosening prevention means 41. It is regulated. Therefore, the sealing state by the ferrule 33 is maintained, and the reliability of the sealing performance is excellent.

本実施例1の管継手Ja(閉鎖バルブA)は、挿入空間23に挿入されたパイプPに当接することでパイプPを抜止め状態に保持可能な保持手段として弾性リング34を備えている。この構成によれば、挿入空間23に挿入されたパイプPを抜止め状態に保持することができる。したがって、挿入空間23にパイプPを挿入してから締付部材32の締付け作業を開始するまでの間に、パイプPが挿入空間23から抜け出る虞がなく、作業性に優れている。また、弾性リング34は、挿入空間23内に臨む位置に配されていて、管継手Ja(閉鎖バルブA)の外面に露出していないので、異物の干渉から保護されている。   The pipe joint Ja (closing valve A) according to the first embodiment includes an elastic ring 34 as a holding means that can hold the pipe P in a retaining state by contacting the pipe P inserted into the insertion space 23. According to this configuration, the pipe P inserted into the insertion space 23 can be held in the retaining state. Therefore, there is no possibility that the pipe P will come out of the insertion space 23 between the time when the pipe P is inserted into the insertion space 23 and the time when the tightening operation of the tightening member 32 is started. Further, since the elastic ring 34 is disposed at a position facing the insertion space 23 and is not exposed to the outer surface of the pipe joint Ja (closing valve A), the elastic ring 34 is protected from the interference of foreign matter.

また、締付部材32が、フェルール33に当接して押圧力を付与する筒状の固定部材35と、固定部材35にねじ込まれ、締付け方向のねじ込み力を付与されることで固定部材35にフェルール33側への押圧力を付与する締付ナット36とを備えて構成されている。そして、弾性リング34が、固定部材35と締付ナット36との間で軸線方向に挟まるように配され、締付ナット36を締付け方向にねじ込むことで縮径変形してパイプPの外周に密着するようになっている。したがって、パイプPを挿入する前は、弾性リング34を縮径しない状態にしておけば、パイプPの挿入時の摩擦抵抗が低減されるので、作業性が良好となる。そして、パイプPを挿入した後は、締付ナット36を締付け方向にねじ込めば、弾性リング34によってパイプPを抜止め状態に保持することができる。   In addition, the fastening member 32 is screwed into the fixing member 35 and a cylindrical fixing member 35 that abuts against the ferrule 33 to apply a pressing force, and is given a screwing force in the fastening direction, whereby the ferrule is applied to the fixing member 35. And a tightening nut 36 for applying a pressing force to the side 33. The elastic ring 34 is arranged so as to be sandwiched between the fixing member 35 and the tightening nut 36 in the axial direction, and the diameter of the elastic ring 34 is reduced by screwing the tightening nut 36 in the tightening direction so as to be in close contact with the outer periphery of the pipe P. It is supposed to be. Therefore, if the elastic ring 34 is not reduced in diameter before the pipe P is inserted, the frictional resistance at the time of insertion of the pipe P is reduced, so that workability is improved. And after inserting the pipe P, if the fastening nut 36 is screwed in the tightening direction, the pipe P can be held in the retaining state by the elastic ring 34.

また、継手本体部16の内周には、パイプPの挿入方向前方に向かって縮径した形態であって、挿入空間23に正規挿入されたパイプPの先端を当接させる前部テーパ面29が形成され、弾性リング34が、パイプPの挿入方向において前部テーパ面29よりも後方に配されている。この構成によれば、挿入空間23に正規挿入されたパイプPは、その先端を前部テーパ面29に当接させるとともに、弾性リング34によって抜止め状態に保持される。前部テーパ面29への当接位置と弾性リング34による保持位置は、パイプPの挿入方向に間隔を空けているから、パイプPは、軸線に対して傾くことなく安定した姿勢に保たれる。   Further, the inner circumference of the joint main body portion 16 has a shape that is reduced in diameter toward the front in the insertion direction of the pipe P, and a front tapered surface 29 that abuts the tip of the pipe P that is normally inserted into the insertion space 23. The elastic ring 34 is arranged behind the front tapered surface 29 in the insertion direction of the pipe P. According to this configuration, the pipe P that is normally inserted into the insertion space 23 has its tip abutted against the front taper surface 29, and is held in a retaining state by the elastic ring 34. Since the position of contact with the front tapered surface 29 and the holding position by the elastic ring 34 are spaced from each other in the insertion direction of the pipe P, the pipe P is maintained in a stable posture without being inclined with respect to the axis. .

本実施例1の閉鎖バルブA(管継手Ja)は、締付部材32がフェルール33に押圧力を付与しない状態で、締付部材32が継手本体部16から離脱するのを規制するための離脱規制部材60を備えている。したがって、締付部材32は、緩み方向の外力を受けても、継手本体部16から離脱することはない。また、離脱規制部材60の筒状本体部61は、パイプPが挿入される挿入空間23内に収容される。したがって、挿入空間23への異物の侵入が阻止され、異物によるフェルール33の傷付きが防止される。また、離脱規制部材60は、流路17内の冷媒が挿入空間23を通って外部へ漏出することを防止する封止部材として機能するので、封止部材を離脱規制部材60とは別に設ける場合に比べると、部品点数が少なくなっている。   The closing valve A (pipe joint Ja) of the first embodiment is a detachment for restricting the detachment of the tightening member 32 from the joint body 16 in a state where the tightening member 32 does not apply a pressing force to the ferrule 33. A regulating member 60 is provided. Therefore, the fastening member 32 does not detach from the joint body 16 even when receiving an external force in the loosening direction. Further, the cylindrical main body 61 of the separation regulating member 60 is accommodated in the insertion space 23 into which the pipe P is inserted. Accordingly, the entry of foreign matter into the insertion space 23 is prevented, and the ferrule 33 is prevented from being damaged by the foreign matter. Further, since the separation regulating member 60 functions as a sealing member that prevents the refrigerant in the flow path 17 from leaking outside through the insertion space 23, the sealing member is provided separately from the separation regulating member 60. Compared to, the number of parts is reduced.

<実施例2>
図10は、本発明の実施例2の管継手Jbを示す。この管継手Jbは、上記実施例1と同じ構造の継手機能部12を有するが、離脱規制部材70が実施例1のものとは異なる。本実施例2の管継手Jbは、実施例1のように室外機Bに取り付けられる閉鎖バルブA用の継手手段、図示しない室内機(請求項に記載の熱交換機器)に取り付けられる単機能(バルブ機能を有しない)タイプの継手手段、及び、室外機Bに接続したパイプPと室内機に接続したパイプPとを中継するための継手手段として適用することができる。
<Example 2>
FIG. 10 shows a pipe joint Jb of Example 2 of the present invention. Although this pipe joint Jb has the joint function part 12 having the same structure as that of the first embodiment, the separation regulating member 70 is different from that of the first embodiment. The pipe joint Jb of the second embodiment is a joint function for a closing valve A that is attached to the outdoor unit B as in the first embodiment, and a single function that is attached to an indoor unit (heat exchange device described in claims) (not shown). The present invention can be applied as a joint means of a type that does not have a valve function, and a joint means for relaying the pipe P connected to the outdoor unit B and the pipe P connected to the indoor unit.

本実施例2の管継手Jbを室内機用の継手手段として適用する場合は、継手本体部16を室内機の冷媒用の流通路に接続する。管継手Jbを中継用の継手手段として適用する場合は、継手本体部16の上流端と下流端に、夫々、継手機能部12を取り付ける。中継用の継手手段として適用した場合におけるパイプPの接続形態としては、例えば、室外機B側のパイプPの接続本数を1本とし、室内機側のパイプPの接続本数を複数本とし、管継手Jbを分岐配管用の継手手段として使用することも可能である。   When the pipe joint Jb of the second embodiment is applied as a joint means for an indoor unit, the joint body 16 is connected to the refrigerant flow passage of the indoor unit. When the pipe joint Jb is applied as a joint means for relay, the joint function part 12 is attached to the upstream end and the downstream end of the joint body part 16 respectively. As a connection form of the pipes P when applied as a joint means for relay, for example, the number of pipes P connected on the outdoor unit B side is one, and the number of pipes P connected on the indoor unit side is plural. The joint Jb can also be used as a joint means for branch piping.

離脱規制部材70は、継手本体部16の内周にねじ込みにより取り付けられるねじ込み部材71と、ねじ込み部材71に取り付けられるアーム部材72とから構成されている。ねじ込み部材71の後端部外周には、取付け溝73が形成されている。アーム部材72は、略C字形をなす環状部74と、周方向に間隔を空けて環状部73から後方へ延出する複数のアーム部75と、アーム部75の後端から径方向外向きに延出する係止部76とから構成されている。アーム部材72は、環状部74を取付け溝73に嵌合することによってねじ込み部材71に組み付けられている。   The disengagement restricting member 70 includes a screw member 71 attached to the inner periphery of the joint body 16 by screwing, and an arm member 72 attached to the screw member 71. A mounting groove 73 is formed on the outer periphery of the rear end portion of the screw-in member 71. The arm member 72 includes a substantially C-shaped annular portion 74, a plurality of arm portions 75 extending rearward from the annular portion 73 at intervals in the circumferential direction, and radially outward from the rear end of the arm portion 75. It is comprised from the latching | locking part 76 extended. The arm member 72 is assembled to the screwed member 71 by fitting the annular portion 74 into the attachment groove 73.

離脱規制部材70を継手本体部16の第3雌ネジ部28にねじ込んで取り付けると、ねじ込み部材71と、アーム部75のほぼ全体が挿入空間23内に収容され、係止部76が挿入空間23の後方へ露出する。係止部76は、締付ナット36の小径部47に対し後方から当接、又は接近して対向するように位置する。締付部材32が緩み方向へ回転しても、締付部材32(ロック部材11)が継手本体部16にねじ込まれている状態で、小径部47が係止部76に係止する。したがって、締付部材32が継手本体部16から離脱することはない。   When the detachment restricting member 70 is screwed and attached to the third female screw portion 28 of the joint main body portion 16, almost the entire screwed member 71 and the arm portion 75 are accommodated in the insertion space 23, and the locking portion 76 is inserted in the insertion space 23. It is exposed to the back. The locking portion 76 is positioned so as to contact or approach the small diameter portion 47 of the tightening nut 36 from behind. Even when the tightening member 32 rotates in the loosening direction, the small-diameter portion 47 is locked to the locking portion 76 in a state where the tightening member 32 (lock member 11) is screwed into the joint main body portion 16. Therefore, the fastening member 32 does not come off from the joint body 16.

<実施例3>
図11は、本発明の実施例3の管継手Jcを示す。この管継手Jcは、上記実施例1と同じ構造の継手機能部12を有するが、離脱規制部材80が実施例1のものとは異なる。本実施例2の管継手Jbは、実施例1のように室外機Bに取り付けられる閉鎖バルブA用の継手手段、図示しない室内機(請求項に記載の熱交換機器)に取り付けられる単機能(バルブ機能を有しない)タイプの継手手段、及び、室外機Bに接続したパイプPと室内機に接続したパイプPとを中継するための継手手段として適用することができる。
<Example 3>
FIG. 11 shows a pipe joint Jc of Example 3 of the present invention. Although this pipe joint Jc has the joint function part 12 having the same structure as that of the first embodiment, the separation regulating member 80 is different from that of the first embodiment. The pipe joint Jb of the second embodiment is a joint function for a closing valve A that is attached to the outdoor unit B as in the first embodiment, and a single function that is attached to an indoor unit (heat exchange device described in claims) (not shown). The present invention can be applied as a joint means of a type that does not have a valve function, and a joint means for relaying the pipe P connected to the outdoor unit B and the pipe P connected to the indoor unit.

本実施例3の管継手Jcを室内機用の継手手段として適用する場合は、継手本体部16を室内機の冷媒用の流通路に接続する。管継手Jcを中継用の継手手段として適用する場合は、継手本体部16の上流端と下流端に、夫々、継手機能部12を組み付ける。中継用の継手手段として適用した場合におけるパイプPの接続形態としては、例えば、室外機B側のパイプPの接続本数を1本とし、室内機側のパイプPの接続本数を複数本とし、管継手Jcを分岐配管用の継手手段として使用することも可能である。   When the pipe joint Jc of the third embodiment is applied as a joint means for an indoor unit, the joint body 16 is connected to the refrigerant flow passage of the indoor unit. When the pipe joint Jc is applied as a joint means for relay, the joint function part 12 is assembled to the upstream end and the downstream end of the joint body part 16 respectively. As a connection form of the pipes P when applied as a joint means for relay, for example, the number of pipes P connected on the outdoor unit B side is one, and the number of pipes P connected on the indoor unit side is plural. The joint Jc can also be used as a joint means for branch piping.

離脱規制部材80は、継手本体部16の内周にねじ込みにより取り付けられるねじ込み部材81と、ねじ込み部材81よりも外径の大きいリング部材82とから構成されている。ねじ込み部材81の後端部外周には取付け溝83が形成されている。リング部材82は、略C字形をなし、取付け溝83に嵌合することによってねじ込み部材81に組み付けられている。   The disengagement restricting member 80 includes a screw member 81 attached to the inner periphery of the joint body 16 by screwing, and a ring member 82 having an outer diameter larger than that of the screw member 81. A mounting groove 83 is formed on the outer periphery of the rear end portion of the screw-in member 81. The ring member 82 is substantially C-shaped, and is assembled to the screw-in member 81 by fitting into the mounting groove 83.

離脱規制部材80を継手本体部16の第3雌ネジ部28にねじ込んで取り付けると、ねじ込み部材81の後端部を除いたほぼ全体が挿入空間23内に収容され、リング部材82が挿入空間23の後方へ露出する。リング部材82は、締付ナット36の小径部47に対し後方から当接、又は接近して対向するように位置する。締付部材32が緩み方向へ回転しても、締付部材32(ロック部材11)が継手本体部16にねじ込まれている状態で、小径部47がリング部材82に係止する。したがって、締付部材32が継手本体部16から離脱することはない。   When the detachment restricting member 80 is screwed and attached to the third female screw portion 28 of the joint main body portion 16, almost the entire portion excluding the rear end portion of the screwed member 81 is accommodated in the insertion space 23, and the ring member 82 is inserted into the insertion space 23. It is exposed to the back. The ring member 82 is positioned so as to contact or approach the small diameter portion 47 of the tightening nut 36 from the rear. Even if the tightening member 32 rotates in the loosening direction, the small-diameter portion 47 is locked to the ring member 82 in a state where the tightening member 32 (lock member 11) is screwed into the joint main body portion 16. Therefore, the fastening member 32 does not come off from the joint body 16.

<他の実施例>
本発明は上記記述及び図面によって説明した実施例に限定されるものではなく、例えば次のような実施例も本発明の技術的範囲に含まれる。
(1)上記実施例1に記載した「締付部材がフェルールに押圧力を付与しない状態で、締付部材が継手本体部から離脱するのを規制する離脱規制部材60」の構成は、室外機に取り付けられる閉鎖バルブ用の管継手に限らず、室内機に取り付けられる単機能(バルブ機能を有しない)タイプの管継手や、室外機に接続したパイプと室内機に接続したパイプとを中継するための管継手にも適用することができる。また、中継継手におけるパイプの接続形態としては、室外機側のパイプの接続本数を1本とし、室内機側のパイプの接続本数を複数本とし、管継手を分岐配管用の継手手段として使用することも可能である。
(2)上記実施例1では、離脱規制部材が、封止部材としての機能を兼ね備えるようにしたが、離脱規制部材は封止部材とは別の専用部品としてもよい。
(3)上記実施例1では、離脱規制部材を、締付部材の内周側(パイプの挿入空間内)において継手本体部に取り付けたが、離脱規制部材は、締付部材に被せて、筒状部への外周に取り付けてもよい。
(4)上記実施例1では、離脱規制部材のストッパを、全周に亘って連続するフランジ状としたが、ストッパは、周方向に間隔を空けた複数位置に配置したものであってもよい。
(5)上記実施例1では、締付ナットの外周の断面形状を正六角形としたが、締付ナットの外周の断面形状は、正六角形以外の正多角形(例えば、正三角形)や、長円形、楕円形等の非円形としてもよい。
(6)上記実施例1では、締付部材を締付ナットと固定部材との2部品で構成したが、締付部材は単一部品でもよい。
(7)上記実施例1では、締付部材を締付ナットと固定部材との2部品で構成した上で、フェルールをシール状態に塑性変形させる時には、締付ナットに工具を嵌合して締付けるようにしたが、これに替えて、固定部材に工具を嵌合して締め付けてもよい。この場合、締付ナットは、締付け機能を持たず、保持手段(弾性リング)を縮径変形させる機能のみを有するものにしてよい。また、締付ナットに締付け機能を持たせない場合、締付ナットの外周は、正六角形に限らず、ローレットや突起状の摘み部等、手作業で締付ナットを回転させ易い形状にしてもよい。
(8)上記実施例1では、継手本体部(ハウジング)、フェルール、固定部材、締付ナットの材料を、黄銅製としたが、これらの部材の少なくとも一部は、黄銅以外の金属(例えば、アルミニウム、アルミ合金)としてもよい。
(9)上記実施例1では、封止部材の材料を黄銅としたが、封止部材は、黄銅以外の金属(例えば、アルミニウム、アルミ合金)製でもよく、合成樹脂製でもよく、金属部材と合成樹脂部材とを組み合わせたものでもよい。
(10)上記実施例1では、第2雄ネジ部と第2雌ネジ部の螺旋ピッチを、第1雄ネジ部と第1雌ネジ部の螺旋ピッチより大きくしたが、双方の螺旋ピッチの大小関係は実施例1と逆でもよく、双方の螺旋ピッチが同じでもよい。
(11)上記実施例1では、第1雄ネジ部と第1雌ネジ部の螺旋ピッチを、第3雄ネジ部と第3雌ネジ部の螺旋ピッチより大きくしたが、双方の螺旋ピッチの大小関係は実施例1と逆でもよい。
(12)上記実施例1では、第2雄ネジ部と第2雌ネジ部の螺旋ピッチを、第3雄ネジ部と第3雌ネジ部の螺旋ピッチより大きくしたが、双方の螺旋ピッチの大小関係は実施例1と逆でもよく、双方の螺旋ピッチが同じでもよい。
<参考例>
(1)上記実施例1では、離脱規制部材を継手本体部に対してねじ込みによって取り付けたが、離脱規制部材は、ねじ込みに限らず、継手本体部の内周の溝や凹部に弾性的に引っ掛ける方法で取り付けてもよい。
(2)上記実施例1では、第1雄ネジ部と第1雌ネジ部の螺旋ピッチを、第3雄ネジ部と第3雌ネジ部の螺旋ピッチより大きくしたが、双方の螺旋ピッチは同じでもよい。
<Other embodiments>
The present invention is not limited to the embodiments described with reference to the above description and drawings. For example, the following embodiments are also included in the technical scope of the present invention.
(1) The configuration of the “removal restricting member 60 for restricting the fastening member from being detached from the joint main body in a state where the fastening member does not apply a pressing force to the ferrule” described in the first embodiment is an outdoor unit. It is not limited to pipe fittings for closed valves that are attached to, but it also relays single-function (no valve function) type pipe fittings attached to indoor units, pipes connected to outdoor units, and pipes connected to indoor units Therefore, the present invention can also be applied to a pipe joint. In addition, as a pipe connection form in the relay joint, the number of pipes connected to the outdoor unit side is one, the number of pipes connected to the indoor unit side is plural, and the pipe joint is used as a joint means for branch piping. It is also possible.
(2) In the first embodiment, the separation regulating member has a function as a sealing member. However, the separation regulating member may be a dedicated component different from the sealing member.
(3) In the first embodiment, the detachment restricting member is attached to the joint main body on the inner peripheral side of the tightening member (in the pipe insertion space). You may attach to the outer periphery to a shape part.
(4) In the first embodiment, the stopper of the separation regulating member is formed in a flange shape that is continuous over the entire circumference. However, the stopper may be arranged at a plurality of positions spaced in the circumferential direction. .
(5) In the first embodiment, the cross-sectional shape of the outer periphery of the tightening nut is a regular hexagon. However, the cross-sectional shape of the outer periphery of the tightening nut is a regular polygon other than a regular hexagon (for example, a regular triangle) or a long It may be non-circular such as circular or elliptical.
(6) In the first embodiment, the tightening member is composed of two parts including the tightening nut and the fixing member. However, the tightening member may be a single part.
(7) In the first embodiment, the fastening member is composed of two parts of the fastening nut and the fixing member, and when the ferrule is plastically deformed into the sealed state, the tool is fitted to the fastening nut and tightened. However, instead of this, a tool may be fitted to the fixing member and tightened. In this case, the tightening nut may not have a tightening function, but may have only a function of deforming the holding means (elastic ring) by reducing the diameter. If the tightening nut is not provided with a tightening function, the outer periphery of the tightening nut is not limited to a regular hexagon, but a shape such as a knurled or projecting knob is easily rotated by hand. Good.
(8) In the first embodiment, the material of the joint main body (housing), ferrule, fixing member, and tightening nut is made of brass, but at least a part of these members is made of a metal other than brass (for example, (Aluminum, aluminum alloy).
(9) In the first embodiment, the material of the sealing member is brass, but the sealing member may be made of a metal other than brass (for example, aluminum or aluminum alloy), may be made of a synthetic resin, A combination with a synthetic resin member may be used.
(10) In the first embodiment, the helical pitch of the second male screw portion and the second female screw portion is set larger than the helical pitch of the first male screw portion and the first female screw portion. The relationship may be opposite to that in the first embodiment, and both the helical pitches may be the same.
(11) In the first embodiment, the helical pitch of the first male screw portion and the first female screw portion is larger than the helical pitch of the third male screw portion and the third female screw portion. The relationship may be reverse to that in the first embodiment .
(12) In the first embodiment, the helical pitch of the second male screw portion and the second female screw portion is larger than the helical pitch of the third male screw portion and the third female screw portion. The relationship may be opposite to that in the first embodiment, and both the helical pitches may be the same.
<Reference example>
(1) In the first embodiment, the disengagement restricting member is attached to the joint main body by screwing. However, the disengagement restricting member is not limited to screwing, and is elastically hooked into the inner peripheral groove or recess of the joint main body. You may attach by the method.
(2) In the first embodiment, the helical pitch of the first male screw portion and the first female screw portion is larger than the helical pitch of the third male screw portion and the third female screw portion. But you can.

A…閉鎖バルブ
B…室外機(熱交換器)
Ja…管継手
P…パイプ
15…ハウジング
16…継手本体部
17…流路
20…第1弁体(弁体)
21…第2弁体(弁体)
23…挿入空間
32…締付部材
33…フェルール
60…離脱規制部材(封止部材)
61…筒状本体部(本体部)
62…ストッパ
Jb,Jc…管継手
70,80…離脱規制部材
A ... Closing valve B ... Outdoor unit (heat exchanger)
Ja ... Pipe joint P ... Pipe 15 ... Housing 16 ... Joint body 17 ... Flow path 20 ... First valve body (valve body)
21 ... Second valve element (valve element)
23 ... Insertion space 32 ... Tightening member 33 ... Ferrule 60 ... Detachment restricting member (sealing member)
61 ... cylindrical main body (main body)
62 ... Stopper Jb, Jc ... Fitting 70, 80 ... Separation restricting member

Claims (3)

熱交換機器の冷媒の流路と連通した形態であり、パイプが挿入されるようになっている筒状の継手本体部と、
前記継手本体部にねじ込みにより取り付けられ、前記継手本体部へのねじ込み量を増しながら締付け方向へ螺進する筒状の締付部材と、
締付け方向にねじ込まれた前記締付部材から軸方向の押圧力を受けることで、前記継手本体部の内周と前記パイプの外周との間を気密状にシールするフェルールと、
前記締付部材が前記フェルールに押圧力を付与しない状態で、前記締付部材が前記継手本体部から離脱するのを規制する離脱規制部材とを備えた管継手であって、
前記パイプを挿入させる挿入空間を有し、
前記離脱規制部材が、
前記挿入空間に収容され、前記継手本体部に対しねじ込みにより取り付けられる本体部と、
前記締付部材に対して接近して対向又は当接可能なストッパとを備えて構成されており、
前記本体部と前記継手本体部とのねじ込み部の螺旋ピッチと、前記締付部材と前記継手本体部とのねじ込み部の螺旋ピッチとが異なっていることを特徴とする管継手。
A tubular joint main body portion that is in communication with the refrigerant flow path of the heat exchange device, and into which a pipe is inserted,
A cylindrical fastening member that is attached to the joint body by screwing, and that is screwed in the fastening direction while increasing the amount of screwing into the joint body;
A ferrule that seals between the inner periphery of the joint body portion and the outer periphery of the pipe in an airtight manner by receiving axial pressing force from the tightening member screwed in the tightening direction ;
A pipe joint provided with a detachment restricting member for restricting the detachment of the tightening member from the joint main body in a state where the tightening member does not apply a pressing force to the ferrule ,
An insertion space for inserting the pipe;
The separation regulating member is
A main body portion accommodated in the insertion space and attached to the joint main body portion by screwing;
It is configured to include a stopper that can approach or abut against the tightening member,
A pipe joint characterized in that a helical pitch of a screwed portion between the main body portion and the joint main body portion is different from a helical pitch of a screwed portion between the fastening member and the joint main body portion .
前記離脱規制部材が、前記流路内の冷媒が前記挿入空間を通って外部へ漏出することを防止する封止部材として機能することを特徴とする請求項1記載の管継手。 The pipe joint according to claim 1 , wherein the separation regulating member functions as a sealing member that prevents the refrigerant in the flow path from leaking outside through the insertion space . 請求項1又は請求項2に記載の前記管継手と、The pipe joint according to claim 1 or 2,
前記流路を有し、前記熱交換機器に取り付けられるハウジングと、A housing having the flow path and attached to the heat exchange device;
前記流路を開閉する弁体とを備え、A valve body for opening and closing the flow path,
前記継手本体部が前記ハウジングに形成されていることを特徴とする閉鎖バルブ。A closing valve characterized in that the joint body is formed in the housing.
JP2013057573A 2012-04-27 2013-03-21 Fittings and closing valves Expired - Fee Related JP5395971B2 (en)

Priority Applications (7)

Application Number Priority Date Filing Date Title
JP2013057573A JP5395971B2 (en) 2012-04-27 2013-03-21 Fittings and closing valves
EP13781099.0A EP2843285B1 (en) 2012-04-27 2013-04-26 Pipe joint and closing valve
PCT/JP2013/062416 WO2013162006A1 (en) 2012-04-27 2013-04-26 Pipe fitting and closing valve
PCT/JP2013/062415 WO2013162005A1 (en) 2012-04-27 2013-04-26 Pipe fitting, closing valve and loosening tool
ES13780867.1T ES2646224T3 (en) 2012-04-27 2013-04-26 Pipe seal, shut-off valve and release tool
EP13780867.1A EP2843284B1 (en) 2012-04-27 2013-04-26 Pipe joint, closing valve and loosening tool
ES13781099.0T ES2645624T3 (en) 2012-04-27 2013-04-26 Pipe joint and shut-off valve

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